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QUANTIFICATION OF CELLS CAPABLE OF GROWTH AND MULTIPLICATION USING DIRECT VIABLE COUNT METHOD IN FILAMENTOUS AND UNICELLULARCYANOBACTERIA

Sarchizian, . Iris, Ardelean, Ioan

First published: 2012-06-18https://doi.org/10.5593/sgem2012/s20.v5088View metrics

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Title
QUANTIFICATION OF CELLS CAPABLE OF GROWTH AND MULTIPLICATION USING DIRECT VIABLE COUNT METHOD IN FILAMENTOUS AND UNICELLULARCYANOBACTERIA
Authors
Sarchizian, . Iris, Ardelean, Ioan
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; SGEM2012 12th International Multidisciplinary Scientific GeoConference
Publisher
Stef92 Technology
Year
2012
Pages
655 - 662 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
References46
  1. J. Biophotonics International Image processing with Image Abramoff 11 36 2004

  2. Limnol. Oceanogr. Methods Automated measurements of filamentous cyanobacteria by digital image analysis. Almesjo 5 217 2007

  3. J. Microbiol. Methods Direct viable count of gram positive and gram negative bacteria using ciproflocacin as inhibitor of cellular division. Barcina 22 139 1995

  4. Aquat. Microb. Ecol. Metabolically active bacteria in Lake Kinneret. Berrnann 23 213 2001

  5. Mol. Cell Probes New methodology for viability testing in environmental samples. Biggerstaff 20 141 2006

  6. Digital Image Processing - An algorithmic introduction using Java. Burger 2007

  7. Appl. Environ. Microbiol. Technique for enumeration of heterotrophic and phototrophic nanoplankton , using epifluorescence microcopy and comparison with other procedures. Caron 46 491 1983

  8. Appl. Environ. Microbiol. Methodology for estimating numbers of free-living and attached bacteria in estuarine water. Clarke 51 1110 1986

  9. Can. J. Microbiol The optimization and application of two direct viable count method for bacteria in distributed drinking water. Coallier 40 830 1994

  10. Native Aquatic Bacteria: Enumeration, Activity and Ecology Direct epifluorescence enumeration of native aquatic bacteria: used, limitations and comparative accuracy. Daley 29 1979

  11. J. Plankt. Res. Automated counting of phytoplankton by pattern recognition: a comparison with a manual counting method. Embleton 25 669 2003

  12. Microb. Ecol. Size-Selective Grazing of Coastal Bacterioplankton by Natural Assemblages of Pigmented Flagellates, Colorless Flagellates, and Ciliate. Epstein 23 211 1992

  13. Ovidius University Annals - Biology-Ecology Series Utilization of epifluorescence microscopy and digital image analysis to study some morphological and functional aspects of prokaryotes. Ghiţă 14 127 2010

  14. 3rd. International Symposium of Biotechnology „SimpBTH 2010" Quantification of actively growing hydrocarbon-oxydizing /tolerant bacteria in marine microcosms supplemented with gasoline. Ghiţă 204 2010

  15. J. Appl. Microbiol. Enumeration and characterization of bacteria in mineral water by improved direct viable count method. Guyard 86 841 1999

  16. J. Cons. Ciem. The identification, counting, and measurement of phytoplankton by an image-processing system. Ishii 43 253 1987

  17. J. Japan Society on Water Environ. Estimation of Microcystis colony size in developing water blooms via image analysis. Ishikawa 27 69 2004

  18. Appl. Environ. Microbiol. Ecological implications of an improved direct viable count method for aquatic bacteria. Joux 63 3643 1997

  19. Microbes Infect. Use of fluorescent probes to assess physiological functions of bacteria at single-cell level. Joux 2 1523 2000

  20. Can. J. Microbiol. A tentative direct microscopic method for counting living marine bacteria. Kogure 25 415 1979

  21. Arch. Hydrobiol, An improved direct viable count method for aquatic bacteria. Kogure 102 117 1984

  22. J. Plankton Res. Giuffre G. Pico- nano- and microplankton in hydrothermal environments of the Eolian Islands in the Mediterranean Sea. Lucila 18 715 1996

  23. Rom. J.Biol- Plant Biol. Axenic culture of a diazotrophic filamentous cyanobacterium Isolated from mesothermal sulphurous springs (Obanul Mare - Mangalia) Sarchizian 55 47 2010

  24. J. Biophotonics International Image processing with Image Abramoff 11 36 2004

  25. Limnol. Oceanogr. Methods Automated measurements of filamentous cyanobacteria by digital image analysis. Almesjo 5 217 2007

  26. J. Microbiol. Methods Direct viable count of gram positive and gram negative bacteria using ciproflocacin as inhibitor of cellular division. Barcina 22 139 1995

  27. Aquat. Microb. Ecol. Metabolically active bacteria in Lake Kinneret. Berrnann 23 213 2001

  28. Mol. Cell Probes New methodology for viability testing in environmental samples. Biggerstaff 20 141 2006

  29. Digital Image Processing - An algorithmic introduction using Java. Burger 2007

  30. Appl. Environ. Microbiol. Technique for enumeration of heterotrophic and phototrophic nanoplankton , using epifluorescence microcopy and comparison with other procedures. Caron 46 491 1983

  31. Appl. Environ. Microbiol. Methodology for estimating numbers of free-living and attached bacteria in estuarine water. Clarke 51 1110 1986

  32. Can. J. Microbiol The optimization and application of two direct viable count method for bacteria in distributed drinking water. Coallier 40 830 1994

  33. Native Aquatic Bacteria: Enumeration, Activity and Ecology Direct epifluorescence enumeration of native aquatic bacteria: used, limitations and comparative accuracy. Daley 29 1979

  34. J. Plankt. Res. Automated counting of phytoplankton by pattern recognition: a comparison with a manual counting method. Embleton 25 669 2003

  35. Microb. Ecol. Size-Selective Grazing of Coastal Bacterioplankton by Natural Assemblages of Pigmented Flagellates, Colorless Flagellates, and Ciliate. Epstein 23 211 1992

  36. Ovidius University Annals - Biology-Ecology Series Utilization of epifluorescence microscopy and digital image analysis to study some morphological and functional aspects of prokaryotes. Ghiţă 14 127 2010

  37. 3rd. International Symposium of Biotechnology „SimpBTH 2010" Quantification of actively growing hydrocarbon-oxydizing /tolerant bacteria in marine microcosms supplemented with gasoline. Ghiţă 204 2010

  38. J. Appl. Microbiol. Enumeration and characterization of bacteria in mineral water by improved direct viable count method. Guyard 86 841 1999

  39. J. Cons. Ciem. The identification, counting, and measurement of phytoplankton by an image-processing system. Ishii 43 253 1987

  40. J. Japan Society on Water Environ. Estimation of Microcystis colony size in developing water blooms via image analysis. Ishikawa 27 69 2004

  41. Appl. Environ. Microbiol. Ecological implications of an improved direct viable count method for aquatic bacteria. Joux 63 3643 1997

  42. Microbes Infect. Use of fluorescent probes to assess physiological functions of bacteria at single-cell level. Joux 2 1523 2000

  43. Can. J. Microbiol. A tentative direct microscopic method for counting living marine bacteria. Kogure 25 415 1979

  44. Arch. Hydrobiol, An improved direct viable count method for aquatic bacteria. Kogure 102 117 1984

  45. J. Plankton Res. Giuffre G. Pico- nano- and microplankton in hydrothermal environments of the Eolian Islands in the Mediterranean Sea. Lucila 18 715 1996

  46. Rom. J.Biol- Plant Biol. Axenic culture of a diazotrophic filamentous cyanobacterium Isolated from mesothermal sulphurous springs (Obanul Mare - Mangalia) Sarchizian 55 47 2010

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